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首页> 外文期刊>Automation in construction >Multi-point vibration measurement and mode magnification of civil structures using video-based motion processing
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Multi-point vibration measurement and mode magnification of civil structures using video-based motion processing

机译:基于视频的运动处理对土木结构的多点振动测量和模式放大

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摘要

Image-based vibration measurement has gained increased attentions in civil and construction communities. A recent video-based motion magnification method was developed to measure and visualize small structure motions. This new approach presents a potential for low-cost vibration measurement and mode shape identification. Pilot studies using this approach on simple rigid body structures were reported. Its validity on complex outdoor structures has not been investigated. In this study, a non-contact video-based approach for multi-point vibration measurement and mode magnification is introduced. The proposed approach can output a full-field vibration map that increases the efficiency of the current structural health monitoring (SHM) practice. The multi-point approach is developed based on the local phases which also fill the gap of the existing intensity-based multi-point vibration measurement. As an extension of the phase-based motion magnification, the multi-point measurement result is then integrated with the maximum likelihood estimation (MLE) to estimate the magnified frequency bands at each identified structure mode for operational deflection shape (ODS) visualization. This proposed method was tested in both indoor and outdoor environments for validation. The results show that using the developed method, mode frequencies and mode shapes of multiple points in complex structures can be simultaneously measured. And vibrations in each mode can be visualized separately after magnification.
机译:基于图像的振动测量已在民用和建筑界引起了越来越多的关注。最近开发了一种基于视频的运动放大方法,以测量和可视化小结构运动。这种新方法为低成本振动测量和模式形状识别提供了潜力。据报道,使用这种方法对简单的刚体结构进行了试验研究。尚未研究其在复杂室外结构上的有效性。在这项研究中,介绍了一种基于非接触视频的多点振动测量和模式放大方法。所提出的方法可以输出全场振动图,从而提高当前结构健康监测(SHM)实践的效率。基于局部相位开发了多点方法,该方法也填补了现有基于强度的多点振动测量的空白。作为基于相位的运动放大倍数的扩展,然后将多点测量结果与最大似然估计(MLE)集成在一起,以估计每个已识别结构模式下的放大频段,以进行操作偏转形状(ODS)可视化。在室内和室外环境中测试了该方法的有效性。结果表明,使用该方法可以同时测量复杂结构中多个点的模态频率和模态形状。放大后,可以分别显示每个模式下的振动。

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